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Discharge Efficiency of Reservoir-Application-Specific Labyrinth Weirs

机译:特定用途的迷宫堰的排放效率

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摘要

Published labyrinth weir design methods, which have primarily been developed on the basis of labyrinth weir test data from laboratory flumes, are specific to in-channel labyrinth weir applications in which the approach flow is oriented normal to the weir axis. Consequently, some uncertainty exists regarding the hydraulic performance of labyrinth weir configurations that are specific to reservoir applications (i.e., projecting, flush, rounded inlet, and arced labyrinth weirs). The discharge efficiency, as characterized by the weir discharge coefficient, of laboratory-scale projecting, flush, rounded inlet, and arced labyrinth weirs with 12 degree sidewall angles, were evaluated as a function of H_T/P and compared with in-channel labyrinth weir discharge efficiencies. The arced labyrinth weir configuration had a higher discharge efficiency (~5 -11 % higher than an in-channel labyrinth weir orientation). In general, the projecting, flush, and rounded inlet orientations were less efficient than the in-channel labyrinth weir configuration.
机译:已发布的迷宫堰设计方法主要是根据实验室水槽的迷宫堰测试数据开发的,专门针对通道内迷宫堰应用,其中进水流垂直于堰轴线定向。因此,对于迷宫堰构造的水力性能存在一些不确定性,该迷宫堰构造对于储层应用是特定的(即,突出,齐平,圆形入口和弧形迷宫堰)。以H_T / P的函数评估了实验室规模的凸出,齐平,圆形入口和弧形迷宫堰的排放效率,以堰排放系数为特征,该溢流效率是H_T / P的函数,并与通道迷宫堰进行了比较放电效率。弧形迷宫堰结构具有更高的放电效率(比通道内迷宫堰方向高约5 -11%)。通常,突出,齐平和圆形入口方向的效率不及通道迷宫堰结构。

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